Merge branch 'omap/multiplatform-fixes', tag 'v3.8-rc5' into next/multiplatform
[firefly-linux-kernel-4.4.55.git] / drivers / net / ethernet / ti / davinci_cpdma.c
1 /*
2  * Texas Instruments CPDMA Driver
3  *
4  * Copyright (C) 2010 Texas Instruments
5  *
6  * This program is free software; you can redistribute it and/or
7  * modify it under the terms of the GNU General Public License as
8  * published by the Free Software Foundation version 2.
9  *
10  * This program is distributed "as is" WITHOUT ANY WARRANTY of any
11  * kind, whether express or implied; without even the implied warranty
12  * of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13  * GNU General Public License for more details.
14  */
15 #include <linux/kernel.h>
16 #include <linux/spinlock.h>
17 #include <linux/device.h>
18 #include <linux/module.h>
19 #include <linux/slab.h>
20 #include <linux/err.h>
21 #include <linux/dma-mapping.h>
22 #include <linux/io.h>
23
24 #include "davinci_cpdma.h"
25
26 /* DMA Registers */
27 #define CPDMA_TXIDVER           0x00
28 #define CPDMA_TXCONTROL         0x04
29 #define CPDMA_TXTEARDOWN        0x08
30 #define CPDMA_RXIDVER           0x10
31 #define CPDMA_RXCONTROL         0x14
32 #define CPDMA_SOFTRESET         0x1c
33 #define CPDMA_RXTEARDOWN        0x18
34 #define CPDMA_TXINTSTATRAW      0x80
35 #define CPDMA_TXINTSTATMASKED   0x84
36 #define CPDMA_TXINTMASKSET      0x88
37 #define CPDMA_TXINTMASKCLEAR    0x8c
38 #define CPDMA_MACINVECTOR       0x90
39 #define CPDMA_MACEOIVECTOR      0x94
40 #define CPDMA_RXINTSTATRAW      0xa0
41 #define CPDMA_RXINTSTATMASKED   0xa4
42 #define CPDMA_RXINTMASKSET      0xa8
43 #define CPDMA_RXINTMASKCLEAR    0xac
44 #define CPDMA_DMAINTSTATRAW     0xb0
45 #define CPDMA_DMAINTSTATMASKED  0xb4
46 #define CPDMA_DMAINTMASKSET     0xb8
47 #define CPDMA_DMAINTMASKCLEAR   0xbc
48 #define CPDMA_DMAINT_HOSTERR    BIT(1)
49
50 /* the following exist only if has_ext_regs is set */
51 #define CPDMA_DMACONTROL        0x20
52 #define CPDMA_DMASTATUS         0x24
53 #define CPDMA_RXBUFFOFS         0x28
54 #define CPDMA_EM_CONTROL        0x2c
55
56 /* Descriptor mode bits */
57 #define CPDMA_DESC_SOP          BIT(31)
58 #define CPDMA_DESC_EOP          BIT(30)
59 #define CPDMA_DESC_OWNER        BIT(29)
60 #define CPDMA_DESC_EOQ          BIT(28)
61 #define CPDMA_DESC_TD_COMPLETE  BIT(27)
62 #define CPDMA_DESC_PASS_CRC     BIT(26)
63
64 #define CPDMA_TEARDOWN_VALUE    0xfffffffc
65
66 struct cpdma_desc {
67         /* hardware fields */
68         u32                     hw_next;
69         u32                     hw_buffer;
70         u32                     hw_len;
71         u32                     hw_mode;
72         /* software fields */
73         void                    *sw_token;
74         u32                     sw_buffer;
75         u32                     sw_len;
76 };
77
78 struct cpdma_desc_pool {
79         u32                     phys;
80         u32                     hw_addr;
81         void __iomem            *iomap;         /* ioremap map */
82         void                    *cpumap;        /* dma_alloc map */
83         int                     desc_size, mem_size;
84         int                     num_desc, used_desc;
85         unsigned long           *bitmap;
86         struct device           *dev;
87         spinlock_t              lock;
88 };
89
90 enum cpdma_state {
91         CPDMA_STATE_IDLE,
92         CPDMA_STATE_ACTIVE,
93         CPDMA_STATE_TEARDOWN,
94 };
95
96 static const char *cpdma_state_str[] = { "idle", "active", "teardown" };
97
98 struct cpdma_ctlr {
99         enum cpdma_state        state;
100         struct cpdma_params     params;
101         struct device           *dev;
102         struct cpdma_desc_pool  *pool;
103         spinlock_t              lock;
104         struct cpdma_chan       *channels[2 * CPDMA_MAX_CHANNELS];
105 };
106
107 struct cpdma_chan {
108         enum cpdma_state                state;
109         struct cpdma_ctlr               *ctlr;
110         int                             chan_num;
111         spinlock_t                      lock;
112         struct cpdma_desc __iomem       *head, *tail;
113         int                             count;
114         void __iomem                    *hdp, *cp, *rxfree;
115         u32                             mask;
116         cpdma_handler_fn                handler;
117         enum dma_data_direction         dir;
118         struct cpdma_chan_stats         stats;
119         /* offsets into dmaregs */
120         int     int_set, int_clear, td;
121 };
122
123 /* The following make access to common cpdma_ctlr params more readable */
124 #define dmaregs         params.dmaregs
125 #define num_chan        params.num_chan
126
127 /* various accessors */
128 #define dma_reg_read(ctlr, ofs)         __raw_readl((ctlr)->dmaregs + (ofs))
129 #define chan_read(chan, fld)            __raw_readl((chan)->fld)
130 #define desc_read(desc, fld)            __raw_readl(&(desc)->fld)
131 #define dma_reg_write(ctlr, ofs, v)     __raw_writel(v, (ctlr)->dmaregs + (ofs))
132 #define chan_write(chan, fld, v)        __raw_writel(v, (chan)->fld)
133 #define desc_write(desc, fld, v)        __raw_writel((u32)(v), &(desc)->fld)
134
135 /*
136  * Utility constructs for a cpdma descriptor pool.  Some devices (e.g. davinci
137  * emac) have dedicated on-chip memory for these descriptors.  Some other
138  * devices (e.g. cpsw switches) use plain old memory.  Descriptor pools
139  * abstract out these details
140  */
141 static struct cpdma_desc_pool *
142 cpdma_desc_pool_create(struct device *dev, u32 phys, u32 hw_addr,
143                                 int size, int align)
144 {
145         int bitmap_size;
146         struct cpdma_desc_pool *pool;
147
148         pool = kzalloc(sizeof(*pool), GFP_KERNEL);
149         if (!pool)
150                 return NULL;
151
152         spin_lock_init(&pool->lock);
153
154         pool->dev       = dev;
155         pool->mem_size  = size;
156         pool->desc_size = ALIGN(sizeof(struct cpdma_desc), align);
157         pool->num_desc  = size / pool->desc_size;
158
159         bitmap_size  = (pool->num_desc / BITS_PER_LONG) * sizeof(long);
160         pool->bitmap = kzalloc(bitmap_size, GFP_KERNEL);
161         if (!pool->bitmap)
162                 goto fail;
163
164         if (phys) {
165                 pool->phys  = phys;
166                 pool->iomap = ioremap(phys, size);
167                 pool->hw_addr = hw_addr;
168         } else {
169                 pool->cpumap = dma_alloc_coherent(dev, size, &pool->phys,
170                                                   GFP_KERNEL);
171                 pool->iomap = pool->cpumap;
172                 pool->hw_addr = pool->phys;
173         }
174
175         if (pool->iomap)
176                 return pool;
177
178 fail:
179         kfree(pool->bitmap);
180         kfree(pool);
181         return NULL;
182 }
183
184 static void cpdma_desc_pool_destroy(struct cpdma_desc_pool *pool)
185 {
186         unsigned long flags;
187
188         if (!pool)
189                 return;
190
191         spin_lock_irqsave(&pool->lock, flags);
192         WARN_ON(pool->used_desc);
193         kfree(pool->bitmap);
194         if (pool->cpumap) {
195                 dma_free_coherent(pool->dev, pool->mem_size, pool->cpumap,
196                                   pool->phys);
197         } else {
198                 iounmap(pool->iomap);
199         }
200         spin_unlock_irqrestore(&pool->lock, flags);
201         kfree(pool);
202 }
203
204 static inline dma_addr_t desc_phys(struct cpdma_desc_pool *pool,
205                   struct cpdma_desc __iomem *desc)
206 {
207         if (!desc)
208                 return 0;
209         return pool->hw_addr + (__force dma_addr_t)desc -
210                             (__force dma_addr_t)pool->iomap;
211 }
212
213 static inline struct cpdma_desc __iomem *
214 desc_from_phys(struct cpdma_desc_pool *pool, dma_addr_t dma)
215 {
216         return dma ? pool->iomap + dma - pool->hw_addr : NULL;
217 }
218
219 static struct cpdma_desc __iomem *
220 cpdma_desc_alloc(struct cpdma_desc_pool *pool, int num_desc)
221 {
222         unsigned long flags;
223         int index;
224         struct cpdma_desc __iomem *desc = NULL;
225
226         spin_lock_irqsave(&pool->lock, flags);
227
228         index = bitmap_find_next_zero_area(pool->bitmap, pool->num_desc, 0,
229                                            num_desc, 0);
230         if (index < pool->num_desc) {
231                 bitmap_set(pool->bitmap, index, num_desc);
232                 desc = pool->iomap + pool->desc_size * index;
233                 pool->used_desc++;
234         }
235
236         spin_unlock_irqrestore(&pool->lock, flags);
237         return desc;
238 }
239
240 static void cpdma_desc_free(struct cpdma_desc_pool *pool,
241                             struct cpdma_desc __iomem *desc, int num_desc)
242 {
243         unsigned long flags, index;
244
245         index = ((unsigned long)desc - (unsigned long)pool->iomap) /
246                 pool->desc_size;
247         spin_lock_irqsave(&pool->lock, flags);
248         bitmap_clear(pool->bitmap, index, num_desc);
249         pool->used_desc--;
250         spin_unlock_irqrestore(&pool->lock, flags);
251 }
252
253 struct cpdma_ctlr *cpdma_ctlr_create(struct cpdma_params *params)
254 {
255         struct cpdma_ctlr *ctlr;
256
257         ctlr = kzalloc(sizeof(*ctlr), GFP_KERNEL);
258         if (!ctlr)
259                 return NULL;
260
261         ctlr->state = CPDMA_STATE_IDLE;
262         ctlr->params = *params;
263         ctlr->dev = params->dev;
264         spin_lock_init(&ctlr->lock);
265
266         ctlr->pool = cpdma_desc_pool_create(ctlr->dev,
267                                             ctlr->params.desc_mem_phys,
268                                             ctlr->params.desc_hw_addr,
269                                             ctlr->params.desc_mem_size,
270                                             ctlr->params.desc_align);
271         if (!ctlr->pool) {
272                 kfree(ctlr);
273                 return NULL;
274         }
275
276         if (WARN_ON(ctlr->num_chan > CPDMA_MAX_CHANNELS))
277                 ctlr->num_chan = CPDMA_MAX_CHANNELS;
278         return ctlr;
279 }
280 EXPORT_SYMBOL_GPL(cpdma_ctlr_create);
281
282 int cpdma_ctlr_start(struct cpdma_ctlr *ctlr)
283 {
284         unsigned long flags;
285         int i;
286
287         spin_lock_irqsave(&ctlr->lock, flags);
288         if (ctlr->state != CPDMA_STATE_IDLE) {
289                 spin_unlock_irqrestore(&ctlr->lock, flags);
290                 return -EBUSY;
291         }
292
293         if (ctlr->params.has_soft_reset) {
294                 unsigned long timeout = jiffies + HZ/10;
295
296                 dma_reg_write(ctlr, CPDMA_SOFTRESET, 1);
297                 while (time_before(jiffies, timeout)) {
298                         if (dma_reg_read(ctlr, CPDMA_SOFTRESET) == 0)
299                                 break;
300                 }
301                 WARN_ON(!time_before(jiffies, timeout));
302         }
303
304         for (i = 0; i < ctlr->num_chan; i++) {
305                 __raw_writel(0, ctlr->params.txhdp + 4 * i);
306                 __raw_writel(0, ctlr->params.rxhdp + 4 * i);
307                 __raw_writel(0, ctlr->params.txcp + 4 * i);
308                 __raw_writel(0, ctlr->params.rxcp + 4 * i);
309         }
310
311         dma_reg_write(ctlr, CPDMA_RXINTMASKCLEAR, 0xffffffff);
312         dma_reg_write(ctlr, CPDMA_TXINTMASKCLEAR, 0xffffffff);
313
314         dma_reg_write(ctlr, CPDMA_TXCONTROL, 1);
315         dma_reg_write(ctlr, CPDMA_RXCONTROL, 1);
316
317         ctlr->state = CPDMA_STATE_ACTIVE;
318
319         for (i = 0; i < ARRAY_SIZE(ctlr->channels); i++) {
320                 if (ctlr->channels[i])
321                         cpdma_chan_start(ctlr->channels[i]);
322         }
323         spin_unlock_irqrestore(&ctlr->lock, flags);
324         return 0;
325 }
326 EXPORT_SYMBOL_GPL(cpdma_ctlr_start);
327
328 int cpdma_ctlr_stop(struct cpdma_ctlr *ctlr)
329 {
330         unsigned long flags;
331         int i;
332
333         spin_lock_irqsave(&ctlr->lock, flags);
334         if (ctlr->state != CPDMA_STATE_ACTIVE) {
335                 spin_unlock_irqrestore(&ctlr->lock, flags);
336                 return -EINVAL;
337         }
338
339         ctlr->state = CPDMA_STATE_TEARDOWN;
340
341         for (i = 0; i < ARRAY_SIZE(ctlr->channels); i++) {
342                 if (ctlr->channels[i])
343                         cpdma_chan_stop(ctlr->channels[i]);
344         }
345
346         dma_reg_write(ctlr, CPDMA_RXINTMASKCLEAR, 0xffffffff);
347         dma_reg_write(ctlr, CPDMA_TXINTMASKCLEAR, 0xffffffff);
348
349         dma_reg_write(ctlr, CPDMA_TXCONTROL, 0);
350         dma_reg_write(ctlr, CPDMA_RXCONTROL, 0);
351
352         ctlr->state = CPDMA_STATE_IDLE;
353
354         spin_unlock_irqrestore(&ctlr->lock, flags);
355         return 0;
356 }
357 EXPORT_SYMBOL_GPL(cpdma_ctlr_stop);
358
359 int cpdma_ctlr_dump(struct cpdma_ctlr *ctlr)
360 {
361         struct device *dev = ctlr->dev;
362         unsigned long flags;
363         int i;
364
365         spin_lock_irqsave(&ctlr->lock, flags);
366
367         dev_info(dev, "CPDMA: state: %s", cpdma_state_str[ctlr->state]);
368
369         dev_info(dev, "CPDMA: txidver: %x",
370                  dma_reg_read(ctlr, CPDMA_TXIDVER));
371         dev_info(dev, "CPDMA: txcontrol: %x",
372                  dma_reg_read(ctlr, CPDMA_TXCONTROL));
373         dev_info(dev, "CPDMA: txteardown: %x",
374                  dma_reg_read(ctlr, CPDMA_TXTEARDOWN));
375         dev_info(dev, "CPDMA: rxidver: %x",
376                  dma_reg_read(ctlr, CPDMA_RXIDVER));
377         dev_info(dev, "CPDMA: rxcontrol: %x",
378                  dma_reg_read(ctlr, CPDMA_RXCONTROL));
379         dev_info(dev, "CPDMA: softreset: %x",
380                  dma_reg_read(ctlr, CPDMA_SOFTRESET));
381         dev_info(dev, "CPDMA: rxteardown: %x",
382                  dma_reg_read(ctlr, CPDMA_RXTEARDOWN));
383         dev_info(dev, "CPDMA: txintstatraw: %x",
384                  dma_reg_read(ctlr, CPDMA_TXINTSTATRAW));
385         dev_info(dev, "CPDMA: txintstatmasked: %x",
386                  dma_reg_read(ctlr, CPDMA_TXINTSTATMASKED));
387         dev_info(dev, "CPDMA: txintmaskset: %x",
388                  dma_reg_read(ctlr, CPDMA_TXINTMASKSET));
389         dev_info(dev, "CPDMA: txintmaskclear: %x",
390                  dma_reg_read(ctlr, CPDMA_TXINTMASKCLEAR));
391         dev_info(dev, "CPDMA: macinvector: %x",
392                  dma_reg_read(ctlr, CPDMA_MACINVECTOR));
393         dev_info(dev, "CPDMA: maceoivector: %x",
394                  dma_reg_read(ctlr, CPDMA_MACEOIVECTOR));
395         dev_info(dev, "CPDMA: rxintstatraw: %x",
396                  dma_reg_read(ctlr, CPDMA_RXINTSTATRAW));
397         dev_info(dev, "CPDMA: rxintstatmasked: %x",
398                  dma_reg_read(ctlr, CPDMA_RXINTSTATMASKED));
399         dev_info(dev, "CPDMA: rxintmaskset: %x",
400                  dma_reg_read(ctlr, CPDMA_RXINTMASKSET));
401         dev_info(dev, "CPDMA: rxintmaskclear: %x",
402                  dma_reg_read(ctlr, CPDMA_RXINTMASKCLEAR));
403         dev_info(dev, "CPDMA: dmaintstatraw: %x",
404                  dma_reg_read(ctlr, CPDMA_DMAINTSTATRAW));
405         dev_info(dev, "CPDMA: dmaintstatmasked: %x",
406                  dma_reg_read(ctlr, CPDMA_DMAINTSTATMASKED));
407         dev_info(dev, "CPDMA: dmaintmaskset: %x",
408                  dma_reg_read(ctlr, CPDMA_DMAINTMASKSET));
409         dev_info(dev, "CPDMA: dmaintmaskclear: %x",
410                  dma_reg_read(ctlr, CPDMA_DMAINTMASKCLEAR));
411
412         if (!ctlr->params.has_ext_regs) {
413                 dev_info(dev, "CPDMA: dmacontrol: %x",
414                          dma_reg_read(ctlr, CPDMA_DMACONTROL));
415                 dev_info(dev, "CPDMA: dmastatus: %x",
416                          dma_reg_read(ctlr, CPDMA_DMASTATUS));
417                 dev_info(dev, "CPDMA: rxbuffofs: %x",
418                          dma_reg_read(ctlr, CPDMA_RXBUFFOFS));
419         }
420
421         for (i = 0; i < ARRAY_SIZE(ctlr->channels); i++)
422                 if (ctlr->channels[i])
423                         cpdma_chan_dump(ctlr->channels[i]);
424
425         spin_unlock_irqrestore(&ctlr->lock, flags);
426         return 0;
427 }
428 EXPORT_SYMBOL_GPL(cpdma_ctlr_dump);
429
430 int cpdma_ctlr_destroy(struct cpdma_ctlr *ctlr)
431 {
432         unsigned long flags;
433         int ret = 0, i;
434
435         if (!ctlr)
436                 return -EINVAL;
437
438         spin_lock_irqsave(&ctlr->lock, flags);
439         if (ctlr->state != CPDMA_STATE_IDLE)
440                 cpdma_ctlr_stop(ctlr);
441
442         for (i = 0; i < ARRAY_SIZE(ctlr->channels); i++) {
443                 if (ctlr->channels[i])
444                         cpdma_chan_destroy(ctlr->channels[i]);
445         }
446
447         cpdma_desc_pool_destroy(ctlr->pool);
448         spin_unlock_irqrestore(&ctlr->lock, flags);
449         kfree(ctlr);
450         return ret;
451 }
452 EXPORT_SYMBOL_GPL(cpdma_ctlr_destroy);
453
454 int cpdma_ctlr_int_ctrl(struct cpdma_ctlr *ctlr, bool enable)
455 {
456         unsigned long flags;
457         int i, reg;
458
459         spin_lock_irqsave(&ctlr->lock, flags);
460         if (ctlr->state != CPDMA_STATE_ACTIVE) {
461                 spin_unlock_irqrestore(&ctlr->lock, flags);
462                 return -EINVAL;
463         }
464
465         reg = enable ? CPDMA_DMAINTMASKSET : CPDMA_DMAINTMASKCLEAR;
466         dma_reg_write(ctlr, reg, CPDMA_DMAINT_HOSTERR);
467
468         for (i = 0; i < ARRAY_SIZE(ctlr->channels); i++) {
469                 if (ctlr->channels[i])
470                         cpdma_chan_int_ctrl(ctlr->channels[i], enable);
471         }
472
473         spin_unlock_irqrestore(&ctlr->lock, flags);
474         return 0;
475 }
476 EXPORT_SYMBOL_GPL(cpdma_ctlr_int_ctrl);
477
478 void cpdma_ctlr_eoi(struct cpdma_ctlr *ctlr)
479 {
480         dma_reg_write(ctlr, CPDMA_MACEOIVECTOR, 0);
481 }
482 EXPORT_SYMBOL_GPL(cpdma_ctlr_eoi);
483
484 struct cpdma_chan *cpdma_chan_create(struct cpdma_ctlr *ctlr, int chan_num,
485                                      cpdma_handler_fn handler)
486 {
487         struct cpdma_chan *chan;
488         int ret, offset = (chan_num % CPDMA_MAX_CHANNELS) * 4;
489         unsigned long flags;
490
491         if (__chan_linear(chan_num) >= ctlr->num_chan)
492                 return NULL;
493
494         ret = -ENOMEM;
495         chan = kzalloc(sizeof(*chan), GFP_KERNEL);
496         if (!chan)
497                 goto err_chan_alloc;
498
499         spin_lock_irqsave(&ctlr->lock, flags);
500         ret = -EBUSY;
501         if (ctlr->channels[chan_num])
502                 goto err_chan_busy;
503
504         chan->ctlr      = ctlr;
505         chan->state     = CPDMA_STATE_IDLE;
506         chan->chan_num  = chan_num;
507         chan->handler   = handler;
508
509         if (is_rx_chan(chan)) {
510                 chan->hdp       = ctlr->params.rxhdp + offset;
511                 chan->cp        = ctlr->params.rxcp + offset;
512                 chan->rxfree    = ctlr->params.rxfree + offset;
513                 chan->int_set   = CPDMA_RXINTMASKSET;
514                 chan->int_clear = CPDMA_RXINTMASKCLEAR;
515                 chan->td        = CPDMA_RXTEARDOWN;
516                 chan->dir       = DMA_FROM_DEVICE;
517         } else {
518                 chan->hdp       = ctlr->params.txhdp + offset;
519                 chan->cp        = ctlr->params.txcp + offset;
520                 chan->int_set   = CPDMA_TXINTMASKSET;
521                 chan->int_clear = CPDMA_TXINTMASKCLEAR;
522                 chan->td        = CPDMA_TXTEARDOWN;
523                 chan->dir       = DMA_TO_DEVICE;
524         }
525         chan->mask = BIT(chan_linear(chan));
526
527         spin_lock_init(&chan->lock);
528
529         ctlr->channels[chan_num] = chan;
530         spin_unlock_irqrestore(&ctlr->lock, flags);
531         return chan;
532
533 err_chan_busy:
534         spin_unlock_irqrestore(&ctlr->lock, flags);
535         kfree(chan);
536 err_chan_alloc:
537         return ERR_PTR(ret);
538 }
539 EXPORT_SYMBOL_GPL(cpdma_chan_create);
540
541 int cpdma_chan_destroy(struct cpdma_chan *chan)
542 {
543         struct cpdma_ctlr *ctlr;
544         unsigned long flags;
545
546         if (!chan)
547                 return -EINVAL;
548         ctlr = chan->ctlr;
549
550         spin_lock_irqsave(&ctlr->lock, flags);
551         if (chan->state != CPDMA_STATE_IDLE)
552                 cpdma_chan_stop(chan);
553         ctlr->channels[chan->chan_num] = NULL;
554         spin_unlock_irqrestore(&ctlr->lock, flags);
555         kfree(chan);
556         return 0;
557 }
558 EXPORT_SYMBOL_GPL(cpdma_chan_destroy);
559
560 int cpdma_chan_get_stats(struct cpdma_chan *chan,
561                          struct cpdma_chan_stats *stats)
562 {
563         unsigned long flags;
564         if (!chan)
565                 return -EINVAL;
566         spin_lock_irqsave(&chan->lock, flags);
567         memcpy(stats, &chan->stats, sizeof(*stats));
568         spin_unlock_irqrestore(&chan->lock, flags);
569         return 0;
570 }
571
572 int cpdma_chan_dump(struct cpdma_chan *chan)
573 {
574         unsigned long flags;
575         struct device *dev = chan->ctlr->dev;
576
577         spin_lock_irqsave(&chan->lock, flags);
578
579         dev_info(dev, "channel %d (%s %d) state %s",
580                  chan->chan_num, is_rx_chan(chan) ? "rx" : "tx",
581                  chan_linear(chan), cpdma_state_str[chan->state]);
582         dev_info(dev, "\thdp: %x\n", chan_read(chan, hdp));
583         dev_info(dev, "\tcp: %x\n", chan_read(chan, cp));
584         if (chan->rxfree) {
585                 dev_info(dev, "\trxfree: %x\n",
586                          chan_read(chan, rxfree));
587         }
588
589         dev_info(dev, "\tstats head_enqueue: %d\n",
590                  chan->stats.head_enqueue);
591         dev_info(dev, "\tstats tail_enqueue: %d\n",
592                  chan->stats.tail_enqueue);
593         dev_info(dev, "\tstats pad_enqueue: %d\n",
594                  chan->stats.pad_enqueue);
595         dev_info(dev, "\tstats misqueued: %d\n",
596                  chan->stats.misqueued);
597         dev_info(dev, "\tstats desc_alloc_fail: %d\n",
598                  chan->stats.desc_alloc_fail);
599         dev_info(dev, "\tstats pad_alloc_fail: %d\n",
600                  chan->stats.pad_alloc_fail);
601         dev_info(dev, "\tstats runt_receive_buff: %d\n",
602                  chan->stats.runt_receive_buff);
603         dev_info(dev, "\tstats runt_transmit_buff: %d\n",
604                  chan->stats.runt_transmit_buff);
605         dev_info(dev, "\tstats empty_dequeue: %d\n",
606                  chan->stats.empty_dequeue);
607         dev_info(dev, "\tstats busy_dequeue: %d\n",
608                  chan->stats.busy_dequeue);
609         dev_info(dev, "\tstats good_dequeue: %d\n",
610                  chan->stats.good_dequeue);
611         dev_info(dev, "\tstats requeue: %d\n",
612                  chan->stats.requeue);
613         dev_info(dev, "\tstats teardown_dequeue: %d\n",
614                  chan->stats.teardown_dequeue);
615
616         spin_unlock_irqrestore(&chan->lock, flags);
617         return 0;
618 }
619
620 static void __cpdma_chan_submit(struct cpdma_chan *chan,
621                                 struct cpdma_desc __iomem *desc)
622 {
623         struct cpdma_ctlr               *ctlr = chan->ctlr;
624         struct cpdma_desc __iomem       *prev = chan->tail;
625         struct cpdma_desc_pool          *pool = ctlr->pool;
626         dma_addr_t                      desc_dma;
627         u32                             mode;
628
629         desc_dma = desc_phys(pool, desc);
630
631         /* simple case - idle channel */
632         if (!chan->head) {
633                 chan->stats.head_enqueue++;
634                 chan->head = desc;
635                 chan->tail = desc;
636                 if (chan->state == CPDMA_STATE_ACTIVE)
637                         chan_write(chan, hdp, desc_dma);
638                 return;
639         }
640
641         /* first chain the descriptor at the tail of the list */
642         desc_write(prev, hw_next, desc_dma);
643         chan->tail = desc;
644         chan->stats.tail_enqueue++;
645
646         /* next check if EOQ has been triggered already */
647         mode = desc_read(prev, hw_mode);
648         if (((mode & (CPDMA_DESC_EOQ | CPDMA_DESC_OWNER)) == CPDMA_DESC_EOQ) &&
649             (chan->state == CPDMA_STATE_ACTIVE)) {
650                 desc_write(prev, hw_mode, mode & ~CPDMA_DESC_EOQ);
651                 chan_write(chan, hdp, desc_dma);
652                 chan->stats.misqueued++;
653         }
654 }
655
656 int cpdma_chan_submit(struct cpdma_chan *chan, void *token, void *data,
657                       int len, gfp_t gfp_mask)
658 {
659         struct cpdma_ctlr               *ctlr = chan->ctlr;
660         struct cpdma_desc __iomem       *desc;
661         dma_addr_t                      buffer;
662         unsigned long                   flags;
663         u32                             mode;
664         int                             ret = 0;
665
666         spin_lock_irqsave(&chan->lock, flags);
667
668         if (chan->state == CPDMA_STATE_TEARDOWN) {
669                 ret = -EINVAL;
670                 goto unlock_ret;
671         }
672
673         desc = cpdma_desc_alloc(ctlr->pool, 1);
674         if (!desc) {
675                 chan->stats.desc_alloc_fail++;
676                 ret = -ENOMEM;
677                 goto unlock_ret;
678         }
679
680         if (len < ctlr->params.min_packet_size) {
681                 len = ctlr->params.min_packet_size;
682                 chan->stats.runt_transmit_buff++;
683         }
684
685         buffer = dma_map_single(ctlr->dev, data, len, chan->dir);
686         mode = CPDMA_DESC_OWNER | CPDMA_DESC_SOP | CPDMA_DESC_EOP;
687
688         desc_write(desc, hw_next,   0);
689         desc_write(desc, hw_buffer, buffer);
690         desc_write(desc, hw_len,    len);
691         desc_write(desc, hw_mode,   mode | len);
692         desc_write(desc, sw_token,  token);
693         desc_write(desc, sw_buffer, buffer);
694         desc_write(desc, sw_len,    len);
695
696         __cpdma_chan_submit(chan, desc);
697
698         if (chan->state == CPDMA_STATE_ACTIVE && chan->rxfree)
699                 chan_write(chan, rxfree, 1);
700
701         chan->count++;
702
703 unlock_ret:
704         spin_unlock_irqrestore(&chan->lock, flags);
705         return ret;
706 }
707 EXPORT_SYMBOL_GPL(cpdma_chan_submit);
708
709 static void __cpdma_chan_free(struct cpdma_chan *chan,
710                               struct cpdma_desc __iomem *desc,
711                               int outlen, int status)
712 {
713         struct cpdma_ctlr               *ctlr = chan->ctlr;
714         struct cpdma_desc_pool          *pool = ctlr->pool;
715         dma_addr_t                      buff_dma;
716         int                             origlen;
717         void                            *token;
718
719         token      = (void *)desc_read(desc, sw_token);
720         buff_dma   = desc_read(desc, sw_buffer);
721         origlen    = desc_read(desc, sw_len);
722
723         dma_unmap_single(ctlr->dev, buff_dma, origlen, chan->dir);
724         cpdma_desc_free(pool, desc, 1);
725         (*chan->handler)(token, outlen, status);
726 }
727
728 static int __cpdma_chan_process(struct cpdma_chan *chan)
729 {
730         struct cpdma_ctlr               *ctlr = chan->ctlr;
731         struct cpdma_desc __iomem       *desc;
732         int                             status, outlen;
733         struct cpdma_desc_pool          *pool = ctlr->pool;
734         dma_addr_t                      desc_dma;
735         unsigned long                   flags;
736
737         spin_lock_irqsave(&chan->lock, flags);
738
739         desc = chan->head;
740         if (!desc) {
741                 chan->stats.empty_dequeue++;
742                 status = -ENOENT;
743                 goto unlock_ret;
744         }
745         desc_dma = desc_phys(pool, desc);
746
747         status  = __raw_readl(&desc->hw_mode);
748         outlen  = status & 0x7ff;
749         if (status & CPDMA_DESC_OWNER) {
750                 chan->stats.busy_dequeue++;
751                 status = -EBUSY;
752                 goto unlock_ret;
753         }
754         status  = status & (CPDMA_DESC_EOQ | CPDMA_DESC_TD_COMPLETE);
755
756         chan->head = desc_from_phys(pool, desc_read(desc, hw_next));
757         chan_write(chan, cp, desc_dma);
758         chan->count--;
759         chan->stats.good_dequeue++;
760
761         if (status & CPDMA_DESC_EOQ) {
762                 chan->stats.requeue++;
763                 chan_write(chan, hdp, desc_phys(pool, chan->head));
764         }
765
766         spin_unlock_irqrestore(&chan->lock, flags);
767
768         __cpdma_chan_free(chan, desc, outlen, status);
769         return status;
770
771 unlock_ret:
772         spin_unlock_irqrestore(&chan->lock, flags);
773         return status;
774 }
775
776 int cpdma_chan_process(struct cpdma_chan *chan, int quota)
777 {
778         int used = 0, ret = 0;
779
780         if (chan->state != CPDMA_STATE_ACTIVE)
781                 return -EINVAL;
782
783         while (used < quota) {
784                 ret = __cpdma_chan_process(chan);
785                 if (ret < 0)
786                         break;
787                 used++;
788         }
789         return used;
790 }
791 EXPORT_SYMBOL_GPL(cpdma_chan_process);
792
793 int cpdma_chan_start(struct cpdma_chan *chan)
794 {
795         struct cpdma_ctlr       *ctlr = chan->ctlr;
796         struct cpdma_desc_pool  *pool = ctlr->pool;
797         unsigned long           flags;
798
799         spin_lock_irqsave(&chan->lock, flags);
800         if (chan->state != CPDMA_STATE_IDLE) {
801                 spin_unlock_irqrestore(&chan->lock, flags);
802                 return -EBUSY;
803         }
804         if (ctlr->state != CPDMA_STATE_ACTIVE) {
805                 spin_unlock_irqrestore(&chan->lock, flags);
806                 return -EINVAL;
807         }
808         dma_reg_write(ctlr, chan->int_set, chan->mask);
809         chan->state = CPDMA_STATE_ACTIVE;
810         if (chan->head) {
811                 chan_write(chan, hdp, desc_phys(pool, chan->head));
812                 if (chan->rxfree)
813                         chan_write(chan, rxfree, chan->count);
814         }
815
816         spin_unlock_irqrestore(&chan->lock, flags);
817         return 0;
818 }
819 EXPORT_SYMBOL_GPL(cpdma_chan_start);
820
821 int cpdma_chan_stop(struct cpdma_chan *chan)
822 {
823         struct cpdma_ctlr       *ctlr = chan->ctlr;
824         struct cpdma_desc_pool  *pool = ctlr->pool;
825         unsigned long           flags;
826         int                     ret;
827         unsigned long           timeout;
828
829         spin_lock_irqsave(&chan->lock, flags);
830         if (chan->state != CPDMA_STATE_ACTIVE) {
831                 spin_unlock_irqrestore(&chan->lock, flags);
832                 return -EINVAL;
833         }
834
835         chan->state = CPDMA_STATE_TEARDOWN;
836         dma_reg_write(ctlr, chan->int_clear, chan->mask);
837
838         /* trigger teardown */
839         dma_reg_write(ctlr, chan->td, chan_linear(chan));
840
841         /* wait for teardown complete */
842         timeout = jiffies + HZ/10;      /* 100 msec */
843         while (time_before(jiffies, timeout)) {
844                 u32 cp = chan_read(chan, cp);
845                 if ((cp & CPDMA_TEARDOWN_VALUE) == CPDMA_TEARDOWN_VALUE)
846                         break;
847                 cpu_relax();
848         }
849         WARN_ON(!time_before(jiffies, timeout));
850         chan_write(chan, cp, CPDMA_TEARDOWN_VALUE);
851
852         /* handle completed packets */
853         spin_unlock_irqrestore(&chan->lock, flags);
854         do {
855                 ret = __cpdma_chan_process(chan);
856                 if (ret < 0)
857                         break;
858         } while ((ret & CPDMA_DESC_TD_COMPLETE) == 0);
859         spin_lock_irqsave(&chan->lock, flags);
860
861         /* remaining packets haven't been tx/rx'ed, clean them up */
862         while (chan->head) {
863                 struct cpdma_desc __iomem *desc = chan->head;
864                 dma_addr_t next_dma;
865
866                 next_dma = desc_read(desc, hw_next);
867                 chan->head = desc_from_phys(pool, next_dma);
868                 chan->count--;
869                 chan->stats.teardown_dequeue++;
870
871                 /* issue callback without locks held */
872                 spin_unlock_irqrestore(&chan->lock, flags);
873                 __cpdma_chan_free(chan, desc, 0, -ENOSYS);
874                 spin_lock_irqsave(&chan->lock, flags);
875         }
876
877         chan->state = CPDMA_STATE_IDLE;
878         spin_unlock_irqrestore(&chan->lock, flags);
879         return 0;
880 }
881 EXPORT_SYMBOL_GPL(cpdma_chan_stop);
882
883 int cpdma_chan_int_ctrl(struct cpdma_chan *chan, bool enable)
884 {
885         unsigned long flags;
886
887         spin_lock_irqsave(&chan->lock, flags);
888         if (chan->state != CPDMA_STATE_ACTIVE) {
889                 spin_unlock_irqrestore(&chan->lock, flags);
890                 return -EINVAL;
891         }
892
893         dma_reg_write(chan->ctlr, enable ? chan->int_set : chan->int_clear,
894                       chan->mask);
895         spin_unlock_irqrestore(&chan->lock, flags);
896
897         return 0;
898 }
899
900 struct cpdma_control_info {
901         u32             reg;
902         u32             shift, mask;
903         int             access;
904 #define ACCESS_RO       BIT(0)
905 #define ACCESS_WO       BIT(1)
906 #define ACCESS_RW       (ACCESS_RO | ACCESS_WO)
907 };
908
909 struct cpdma_control_info controls[] = {
910         [CPDMA_CMD_IDLE]          = {CPDMA_DMACONTROL,  3,  1,      ACCESS_WO},
911         [CPDMA_COPY_ERROR_FRAMES] = {CPDMA_DMACONTROL,  4,  1,      ACCESS_RW},
912         [CPDMA_RX_OFF_LEN_UPDATE] = {CPDMA_DMACONTROL,  2,  1,      ACCESS_RW},
913         [CPDMA_RX_OWNERSHIP_FLIP] = {CPDMA_DMACONTROL,  1,  1,      ACCESS_RW},
914         [CPDMA_TX_PRIO_FIXED]     = {CPDMA_DMACONTROL,  0,  1,      ACCESS_RW},
915         [CPDMA_STAT_IDLE]         = {CPDMA_DMASTATUS,   31, 1,      ACCESS_RO},
916         [CPDMA_STAT_TX_ERR_CODE]  = {CPDMA_DMASTATUS,   20, 0xf,    ACCESS_RW},
917         [CPDMA_STAT_TX_ERR_CHAN]  = {CPDMA_DMASTATUS,   16, 0x7,    ACCESS_RW},
918         [CPDMA_STAT_RX_ERR_CODE]  = {CPDMA_DMASTATUS,   12, 0xf,    ACCESS_RW},
919         [CPDMA_STAT_RX_ERR_CHAN]  = {CPDMA_DMASTATUS,   8,  0x7,    ACCESS_RW},
920         [CPDMA_RX_BUFFER_OFFSET]  = {CPDMA_RXBUFFOFS,   0,  0xffff, ACCESS_RW},
921 };
922
923 int cpdma_control_get(struct cpdma_ctlr *ctlr, int control)
924 {
925         unsigned long flags;
926         struct cpdma_control_info *info = &controls[control];
927         int ret;
928
929         spin_lock_irqsave(&ctlr->lock, flags);
930
931         ret = -ENOTSUPP;
932         if (!ctlr->params.has_ext_regs)
933                 goto unlock_ret;
934
935         ret = -EINVAL;
936         if (ctlr->state != CPDMA_STATE_ACTIVE)
937                 goto unlock_ret;
938
939         ret = -ENOENT;
940         if (control < 0 || control >= ARRAY_SIZE(controls))
941                 goto unlock_ret;
942
943         ret = -EPERM;
944         if ((info->access & ACCESS_RO) != ACCESS_RO)
945                 goto unlock_ret;
946
947         ret = (dma_reg_read(ctlr, info->reg) >> info->shift) & info->mask;
948
949 unlock_ret:
950         spin_unlock_irqrestore(&ctlr->lock, flags);
951         return ret;
952 }
953
954 int cpdma_control_set(struct cpdma_ctlr *ctlr, int control, int value)
955 {
956         unsigned long flags;
957         struct cpdma_control_info *info = &controls[control];
958         int ret;
959         u32 val;
960
961         spin_lock_irqsave(&ctlr->lock, flags);
962
963         ret = -ENOTSUPP;
964         if (!ctlr->params.has_ext_regs)
965                 goto unlock_ret;
966
967         ret = -EINVAL;
968         if (ctlr->state != CPDMA_STATE_ACTIVE)
969                 goto unlock_ret;
970
971         ret = -ENOENT;
972         if (control < 0 || control >= ARRAY_SIZE(controls))
973                 goto unlock_ret;
974
975         ret = -EPERM;
976         if ((info->access & ACCESS_WO) != ACCESS_WO)
977                 goto unlock_ret;
978
979         val  = dma_reg_read(ctlr, info->reg);
980         val &= ~(info->mask << info->shift);
981         val |= (value & info->mask) << info->shift;
982         dma_reg_write(ctlr, info->reg, val);
983         ret = 0;
984
985 unlock_ret:
986         spin_unlock_irqrestore(&ctlr->lock, flags);
987         return ret;
988 }
989 EXPORT_SYMBOL_GPL(cpdma_control_set);